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首页> 外文期刊>International Journal of Damage Mechanics >A micromechanics-based damage model for compressive behavior analysis of impacted composite laminates
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A micromechanics-based damage model for compressive behavior analysis of impacted composite laminates

机译:基于微机械的抗压性能分析损伤模型

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摘要

The compressive strength of composite laminates decreases seriously after being subjected to impact loading, which is an important item to be considered in the usage of composite material. In this paper, a micromechanics-based damage model is proposed to study the compressive behavior of impacted composite laminates. The micro stresses of fiber and matrix are calculated by stress amplification factors and then used to judge the failure mechanisms according to corresponding physical failure criteria. A progressive damage model based on different failure statuses of constituents is established to study the degradation of material properties. The bi-linear cohesive model is used in the research of delamination onset and propagation. The compressive behaviors of quasi-isotropic composite laminates subjected to different impact energies are investigated by this proposed method. Good agreements in terms of structure responses, failure mechanisms, and residual compressive strengths are obtained between numerical results and experimental data. The matrix cracking and delamination caused by impact loading are responsible for the initiation and propagation of buckling, which leads to the final collapse of entire laminates. Based on the numerical investigations of material parameters, the increment of mode II interlaminar fracture toughness is capable of improving the residual compressive strength significantly.
机译:在受冲击载荷后,复合层压板的抗压强度严重降低,这是在使用复合材料中被认为的重要项目。本文提出了一种基于微机械的损伤模型来研究受影响的复合层压板的压缩行为。纤维和基质的微应力由应力放大因子计算,然后用来根据相应的物理故障标准判断失效机制。建立了基于不同故障状态的渐进损伤模型,以研究材料特性的劣化。双线性粘性模型用于分层发作和传播的研究。通过该方法研究了对经受不同冲击能量进行不同冲击能量的准各向同性复合层压板的压缩性能。在数值结果和实验数据之间获得结构响应,失效机制和残留压缩强度的良好协议。由冲击载荷引起的基质开裂和分层负责屈曲和传播,这导致整个层压板的最终塌陷。基于材料参数的数值研究,模式II层间裂缝韧性的增量能够显着改善残留抗压强度。

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